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Electronic Systems Engineer Jobs in Texas (NOW HIRING)

Lead Electronics Systems Engineer

Austin, TX ยท On-site

$120 - $160/hr

... critical electronic systems supporting advanced UAS platforms. This role owns electrical system ... Lead and mentor the Electrical Engineering team, providing technical direction, project oversight ...

Leads requirements definition, flow-down and traceability for complex electronic systems embracing agile product systems and software development and model-based systems engineering (MBSE) processes ...

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Electronic Systems Engineer information

See Texas salary details

$49.8K

$118.5K

$155.6K

How much do electronic systems engineer jobs pay per year?

As of Aug 27, 2026, the average yearly pay for electronic systems engineer in Texas is $118,520.00, according to ZipRecruiter salary data. Most workers in this role earn between $91,300.00 and $146,300.00 per year, depending on experience, location, and employer.

What does an electronic systems engineer do?

Electronic Systems Engineers design, develop, and maintain complex electronic systems used in a wide range of industries such as telecommunications, aerospace, automotive, and healthcare. They work on integrating hardware and software components to ensure the system operates efficiently and reliably. Responsibilities often include circuit design, system simulation, troubleshooting, testing, and collaborating with multidisciplinary teams to deliver innovative solutions. Their work is critical in advancing technology and improving the performance of electronic devices and systems.

What are the key skills and qualifications needed to thrive as an electronic systems engineer?

To thrive as an Electronic Systems Engineer, you need a strong background in electronics, circuit design, and systems engineering, typically supported by a bachelor's degree in electrical or electronic engineering. Familiarity with industry-standard tools such as MATLAB, Simulink, PCB design software, and relevant certifications like Certified Systems Engineering Professional (CSEP) is often required. Excellent problem-solving, collaboration, and communication skills help you work effectively in multidisciplinary teams and convey complex technical concepts. These skills and qualifications are essential for designing reliable electronic systems and ensuring project success from concept to implementation.

What are some common challenges faced by electronic systems engineers when integrating new technologies into existing systems?

Electronic Systems Engineers often encounter challenges such as compatibility issues between legacy hardware and modern components, ensuring robust system security, and minimizing downtime during system upgrades. Successful integration requires thorough testing, detailed documentation, and close collaboration with multidisciplinary teams, including software developers and product managers. Staying up-to-date with industry standards and proactively addressing potential bottlenecks are key strategies to overcoming these challenges.

What is the difference between Electronic Systems Engineer vs Electrical Engineer?

AspectElectronic Systems EngineerElectrical Engineer
CredentialsBachelor's or Master's in Electronic Engineering, certifications like Cisco or IPCBachelor's or Master's in Electrical Engineering, PE license (optional)
Work EnvironmentDesigning and testing electronic systems, working in labs or on-site for electronics companiesPower systems, electrical infrastructure, industrial plants, often in large-scale projects
Industry UsageConsumer electronics, telecommunications, aerospace, defensePower generation, utilities, manufacturing, construction

Electronic Systems Engineers focus on designing and developing electronic components and systems, often working with integrated circuits and embedded systems. Electrical Engineers typically work on larger electrical infrastructure and power systems. While both roles require a strong foundation in electrical principles, their work environments and industry applications differ significantly.

Is electronic systems engineer a high-paying job?

Electronic systems engineers typically earn competitive salaries that vary by experience, location, and industry. They often work in fields such as aerospace, defense, and telecommunications, with higher pay generally associated with specialized skills, certifications, and advanced degrees.

What cities in Texas are hiring for Electronic Systems Engineer jobs?

Cities in Texas with the most Electronic Systems Engineer job openings:

Infographic showing various Electronic Systems Engineer job openings in Texas as of August 2026, with employment types broken down into 83% Full Time, 10% Part Time, 5% Contract, and 2% Nights. Highlights an 86% Physical, 2% Hybrid, and 12% Remote job distribution, with an average salary of $118,520 per year, or $57 per hour.

Lead Electronics Systems Engineer

KRUSH Tech Inc

Austin, TX โ€ข On-site

Full-time

Medical, Retirement, PTO

Re-posted 6 days ago


Job description

KRUSH Tech is a new technology company building advanced hardware solutions for defense, aerospace, communications, and autonomous systems. We're launching our U.S. operations from the ground up — and this is a rare opportunity to join at the very beginning and help shape the company from day one.

At KRUSH Tech, we combine the agility of a startup with the ambition to tackle some of the industry's most demanding engineering challenges. Our teams work across disciplines—including RF, embedded systems, electronics, mechanical engineering, software, manufacturing, and supply chain—to transform innovative ideas into reliable, production-ready solutions. We are building a next-generation, vertically integrated aerospace organization focused on advanced uncrewed aircraft systems (UAS), autonomy, sensing technologies, and scalable manufacturing — for the U.S. market and strategic partners.

We are looking for knowledgable Lead Electrical Systems Engineer to build a next-generation, vertically integrated aerospace organization focused on advanced uncrewed aircraft systems (UAS), autonomy, sensing technologies, and scalable manufacturing. You will provide technical leadership for the design, development, integration, and validation of mission-critical electronic systems supporting advanced UAS platforms. This role owns electrical system architecture, guides multidisciplinary hardware development, and leads engineering teams through concept development, prototyping, verification, and production readiness. Working closely with Mechanical, Embedded Software, RF, Manufacturing, and Systems Engineering teams, you will ensure reliable, high-performance electronic systems that meet demanding aerospace and defense requirements.

Key Responsibilities
  • Lead and mentor the Electrical Engineering team, providing technical direction, project oversight, and engineering best practices.
  • Own the electrical system architecture for advanced UAS platforms, including digital, analog, power electronics, and embedded hardware.
  • Drive hardware development from concept through prototype validation and production release, ensuring designs meet performance, reliability, cost, and manufacturability objectives.
  • Lead technical design reviews, engineering assessments, root-cause investigations, and complex technical decision-making across multiple projects.
  • Define hardware validation strategies, test plans, and acceptance criteria, analyze simulation and test results, and determine product readiness for successive development phases.
  • Collaborate with Manufacturing, Mechanical, Embedded Software, RF, Quality, and Systems Engineering teams to ensure seamless hardware integration and production readiness.
  • Support recruitment, technical interviews, and development of a high-performing engineering organization while driving continuous improvement in engineering methodologies and processes.

Requirements

  • Bachelor's or Master's degree in Electrical Engineering or a related discipline, with 6+ years of experience designing complex electronic systems for aerospace, robotics, defense, or other high-reliability products.
  • Proven expertise in digital electronics, including UART, SPI, I²C, RS-485, USB 2.0, Ethernet, LVDS, analog circuit design, signal integrity, power electronics, and EMC-compliant hardware design.
  • Strong experience designing multi-rail power architectures, power conversion systems, analog front ends, ADCs, DACs, amplifiers, filters, low-noise circuitry, and hardware validation using laboratory test equipment.
  • Experience performing circuit simulation, hardware debugging, failure analysis, and product verification throughout the development lifecycle.
  • Working knowledge of RF hardware principles, IPC standards, and design-for-manufacturing (DFM) and design-for-test (DFT) practices.
  • Demonstrated ability to lead engineering teams, make complex technical decisions, mentor engineers, and deliver products from prototype through production.
Nice To Have
  • Experience developing electronics for UAS, aerospace, defense, robotics, or autonomous systems.
  • Experience with high-speed PCB design, mixed-signal systems, and mission-critical embedded hardware.
  • Familiarity with Altium Designer, LTspice, TINA-TI, Multisim, Proteus, Jira, Confluence, Git, and modern hardware development workflows.
  • Experience supporting qualification, certification, and transition to high-volume manufacturing.
What Success Looks Like
  • Delivery of robust, production-ready electronic systems that meet performance, reliability, and manufacturability targets.
  • High-quality electrical architectures with successful system integration and low field failure rates.
  • Timely execution of development milestones while effectively managing technical risk.
  • Continuous improvement of engineering processes, product quality, and development efficiency.
  • Development of a technically strong, high-performing Electrical Engineering team.

Benefits

  • Health Care Plan
  • Retirement Plan
  • Paid Time Off
  • Family Leave
  • Free Food & Snacks